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藻类滋生水中氯消毒副产物的形成动力学:评估消毒副产物形成风险的新视角。

Formation kinetics of disinfection byproducts in algal-laden water during chlorination: A new insight into evaluating disinfection formation risk.

机构信息

School of Environment, Harbin Institute of Technology, Harbin, 150090, China.

Beijing Spacecrafts, Beijing, 100086, China.

出版信息

Environ Pollut. 2019 Feb;245:63-70. doi: 10.1016/j.envpol.2018.10.074. Epub 2018 Oct 30.

Abstract

It is necessary and important to investigate the formation of disinfection byproducts (DBPs) in water treatment systems for the management of disinfection formation risk. In the present study, the formation potential of trichloromethane (TCM) and haloacetic acids in different algal metabolites were compared, and the formation kinetics of these DBPs were investigated. The results indicated that DBP formation potential, the traditional index widely used to evaluate the disinfection formation risk, can represent neither the total precursors of DBPs nor the possible generated amounts of DBPs in drinking water systems. Kinetic analyses showed that the formation of DBPs could be well described by a classical second-order reaction kinetic model and that the actual concentrations of DBPs during chlorination were predictable with the model. The formation of DBPs in drinking water treatment systems was highly dependent on the total precursors of DBPs in water and the formation rate of DBPs with chlorine; the latter is usually underestimated in previous studies. Because of their high reactivity, TCM in hydrophilic extracellular organic matter and trichloroacetic acid in all algal metabolites should be serious considerations in the management of disinfection formation risk.

摘要

研究水处理系统中消毒副产物(DBPs)的形成对于管理消毒副产物形成风险是必要且重要的。在本研究中,比较了不同藻类代谢物中三氯甲烷(TCM)和卤乙酸的生成潜能,并对这些 DBPs 的生成动力学进行了研究。结果表明,DBP 生成潜能,这一广泛用于评估消毒副产物形成风险的传统指标,既不能代表 DBPs 的总前体物,也不能代表饮用水系统中可能产生的 DBPs 量。动力学分析表明,DBP 的形成可以用经典的二级反应动力学模型很好地描述,并且可以通过该模型预测氯化过程中 DBPs 的实际浓度。饮用水处理系统中 DBPs 的形成高度依赖于水中 DBPs 的总前体物和 DBPs 与氯的生成速率;而后者在以往的研究中通常被低估。由于其高反应性,亲水性细胞外有机物中的 TCM 和所有藻类代谢物中的三氯乙酸应在消毒副产物形成风险的管理中被认真考虑。

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